Lateral Heterometal Junction Rectifier Fabricated by Sequential Transmetallation of Coordination Nanosheet**

Author:

Tan Choon Meng1ORCID,Fukui Naoya1ORCID,Takada Kenji1ORCID,Maeda Hiroaki1ORCID,Selezneva Ekaterina123ORCID,Bourgès Cédric4ORCID,Masunaga Hiroyasu5ORCID,Sasaki Sono67ORCID,Tsukagoshi Kazuhito2ORCID,Mori Takao2ORCID,Sirringhaus Henning3ORCID,Nishihara Hiroshi1ORCID

Affiliation:

1. Research Institute for Science and Technology Tokyo University of Science 2641 Yamazaki Noda Chiba 278 8510 Japan

2. WPI International Center for Materials Nanoarchitectonics (WPI-MANA) National Institute for Materials Science (NIMS) Namiki 1-1 Tsukuba 305-0044 Japan

3. Cavendish Laboratory University of Cambridge JJ Thomson Avenue Cambridge CB3 0HE UK

4. International Center for Young Scientists (ICYS) National Institute for Materials Science (NIMS) Namiki, Tsukuba 305-0044 Japan

5. Japan Synchrotron Radiation Research Institute (JASRI) 1-1-1 Kouto, Sayo-cho Sayo-gun Hyogo 679-5198 (Japan)

6. Faculty of Fiber Science and Engineering Kyoto Institute of Technology 1 Matsugasaki Hashikami-cho Sakyo-ku Kyoto 606-8585 Japan

7. RIKEN SPring-8 Center 1-1-1 Kouto Sayo-cho Sayo-gun Hyogo 679-5148 Japan

Abstract

AbstractHeterostructures of two‐dimensional materials realise novel and enhanced physical phenomena, making them attractive research targets. Compared to inorganic materials, coordination nanosheets have virtually infinite combinations, leading to tunability of physical properties and are promising candidates for heterostructure fabrication. Although stacking of coordination materials into vertical heterostructures is widely reported, reports of lateral coordination material heterostructures are few. Here we show the successful fabrication of a seamless lateral heterojunction showing diode behaviour, by sequential and spatially limited immersion of a new metalladithiolene coordination nanosheet, Zn3BHT, into aqueous Cu(II) and Fe(II) solutions. Upon immersion, the Zn centres in insulating Zn3BHT are replaced by Cu or Fe ions, resulting in conductivity. The transmetallation is spatially confined, occurring only within the immersed area. We anticipate that our results will be a starting point towards exploring transmetallation of various two‐dimensional materials to produce lateral heterojunctions, by providing a new and facile synthetic route.

Funder

Core Research for Evolutional Science and Technology

Japan Society for the Promotion of Science London

Engineering and Physical Sciences Research Council

Japan Society for the Promotion of Science

JST-Mirai Program

Publisher

Wiley

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